研究目的
Investigating the enhancement of pollution degradation performance through secondary self-assembled composite supramolecular heterojunction photocatalyst BiOCl/PDI under visible light irradiation.
研究成果
The secondary self-assembled BiOCl/PDI heterojunction photocatalyst showed enhanced photocatalytic activity under visible light due to optimized energy-band structures, narrower interplanar spacing, and stronger visible light absorption. The study provides a novel approach for designing efficient inorganic/organic heterojunctions for environmental remediation.
研究不足
The study focuses on the photocatalytic degradation of specific organic pollutants under visible light irradiation. The performance under other conditions or with different pollutants was not explored.
1:Experimental Design and Method Selection
The study involved the construction of a novel n-n type inorganic/organic heterojunction of flaky-like BiOCl/PDI photocatalyst using a water bath heating method and secondary self-assembly to prepare BiOCl/PDI with a special band structure.
2:Sample Selection and Data Sources
Samples included BiOCl, PDI, and their composites BiOCl/PDI-1 and BiOCl/PDI-2. Photocatalytic activities were evaluated by degrading aqueous organic pollutants under visible light.
3:List of Experimental Equipment and Materials
Equipment included SEM (Hitachi UHR FE-SEM SU8000), TEM (JEOL Ltd.), XRD, FTIR spectrometer (Thermo), XPS (Thermo Fisher Scientific Ltd.), UV-Vis spectrophotometer (UV-3600), PL spectrofluorometers (FM-4P-TCSPC, HORIBA JobinYvon), and EPR spectrometer (Bruker EMX-10/12). Materials included Bi(NO3)3·5H2O, NH4Cl, perylene-3,4,9,10-tetracarboxylic dianhydride, and others.
4:Experimental Procedures and Operational Workflow
Preparation of BiOCl, PDI, and their composites involved hydrothermal and calcination methods, organic synthesis, and self-assembly processes. Photocatalytic degradation experiments were carried out under visible light irradiation with various pollutants.
5:Data Analysis Methods
Data analysis included SEM, TEM, XRD, FTIR, XPS, UV-Vis DRS, PL, and EPR measurements to characterize the materials and understand the photocatalytic mechanism.
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SEM
UHR FE-SEM SU8000
Hitachi
Characterization of microscopic morphology and size of particles.
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TEM
200 kV field emission transmission electron microscope
JEOL Ltd.
Microstructure observation of BiOCl/PDI.
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XPS
ESCALAB Xi +
Thermo Fisher Scientific Ltd.
Analysis of chemical states of BiOCl/PDI surface elements.
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PL spectrofluorometers
FM-4P-TCSPC
HORIBA JobinYvon
Measurement of photoluminescence spectra.
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EPR spectrometer
EMX-10/12
Bruker
Examination of active species signals under visible light irradiation.
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XRD
X-ray powder diffractometer
Determination of crystallinity of the photocatalysts.
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FTIR spectrometer
Thermo
Characterization of coordinate structures of PDI and BiOCl.
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UV-Vis spectrophotometer
UV-3600
Measurement of light-absorbing property.
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